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Implementation of the Continuous Monitoring System for Technical Condition of the St. Petersburg Arena Stadium Sliding Roof

机译:持续监测系统的持续监测系统条件下的圣彼得堡体育场滑动屋顶

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Modern engineering facilities are unique objects in a single instance with a complex architecture and no less complex technical features. Such objects include the St. Petersburg Arena stadium built in 2016 in Saint Petersburg City. In addition to all the architectural delights, the stadium is also unique due to the decision to erect a sliding roof in order to protect the field and fans from the wind, rain and snowfall that are common in the region. The roof is a complex structure that requires constant monitoring of its technical condition. The system of continuous monitoring of technical condition of the roof structure of St. Petersburg Arena stadium is described in this paper. The uniqueness of the design was predetermined by the careful analysis of the measuring controllers arrangement in the computer model of the diagnostic object. The work describes the object under test in general and the sliding roof apart, as well as the connection points of the measuring controllers sensors indicating the required number of them (strain gauge, inclinometer, deflection sensors, and a weather station are used). The peculiarity and novelty of the problem being solved is that there are only four stadiums with a sliding roof in the whole world, and it is the only such construction in the Russian Federation. The technical solutions presented by the authors allow the transfer of monitoring results to the city's situation center, which in turn increases safety level and reduces the emergencies risks at the diagnostic site.
机译:现代工程设施在单一实例与复杂的架构,没有那么复杂的技术拥有独特的对象。这样的对象包括建于2016年在圣彼得堡市的圣彼得堡球场。除了所有的建筑乐趣,球场也是为了保护现场和球迷从风,雨水和降雪,该地区是共同竖立滑动车顶的决定独特所致。屋顶是一个复杂的结构,需要其技术状况持续监控。连续监测的圣彼得堡球场的屋顶结构的技术状态的系统,本文介绍。了设计的独特性是由在诊断对象的计算机模型的测量控制器装置的仔细分析预先确定。工作描述了在一般的待测对象与分开的滑动车顶,以及测量控制器传感器指示所需数量的它们的连接点(应变计,倾斜计,偏转传感器,和一个气象站被使用)。正在解决这个问题的特殊性和新颖之处在于只有四个场馆在整个世界上滑动车顶,它是唯一的此类建设中的俄罗斯联邦。由作者提出的技术解决方案使监测结果城市的情况中心,这又增加了安全水平,降低突发事件的现场诊断风险的转移。

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